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用于阐明内在无序蛋白及其他蛋白质复合物的邻近增强型半胱氨酸-组氨酸交联

Proximity-enhanced cysteine-histidine crosslinking for elucidating intrinsically disordered and other protein complexes.

作者信息

Wu Qi, van den Wildenberg Sebastian A H, Brzoskowski Jeroen C R, van den Oetelaar Maxime C M, Verhoef Carlo J A, Genet Sylvia A A M, Ottmann Christian, Markvoort Albert J, Brunsveld Luc, Cossar Peter J

机构信息

Laboratory of Chemical Biology, Department of Biomedical Engineering and Institute for Complex Molecular Systems, Eindhoven University of Technology Netherlands

Synthetic Biology Group, Department of Biomedical Engineering and Institute for Complex Molecular Systems, Eindhoven University of Technology Netherlands.

出版信息

Chem Sci. 2025 Jan 7;16(8):3523-3535. doi: 10.1039/d4sc07419j. eCollection 2025 Feb 19.

Abstract

Disordered proteins and domains are ubiquitous throughout the proteome of human cell types, yet the biomolecular sciences lack effective tool compounds and chemical strategies to study this class of proteins. In this context, we introduce a novel covalent tool compound approach that combines proximity-enhanced crosslinking with histidine trapping. Utilizing a maleimide-cyclohexenone crosslinker for efficient cysteine-histidine crosslinking, we elucidated the mechanism of this dual-reactive tool compound class. This tool compound concept was then applied to profile the full-length complex of 14-3-3 and hyperphosphorylated Tau (hpTau), relevant to Alzheimer's. This approach identified a cryptic binding interaction between 14-3-3 and hpTau its phosphorylated Ser356, overlooked by the majority of 14-3-3/Tau literature. Utilizing a mutational study and an equilibrium model, this cryptic binding interaction is revealed to play a prominent biomolecular role at cellularly relevant concentrations. This finding necessitates a re-evaluation of the mechanism of the 14-3-3/Tau interaction. The histidine-trap crosslinker approach reported here not only advances our understanding of the 14-3-3/Tau interaction but also demonstrates the potential of dual-covalent tool compounds in studying complex interactions involving IDPs and IDDs.

摘要

无序蛋白质和结构域在人类细胞类型的蛋白质组中普遍存在,但生物分子科学缺乏有效的工具化合物和化学策略来研究这类蛋白质。在此背景下,我们引入了一种新型共价工具化合物方法,该方法将邻近增强交联与组氨酸捕获相结合。利用马来酰亚胺 - 环己烯酮交联剂进行高效的半胱氨酸 - 组氨酸交联,我们阐明了这类双反应性工具化合物的作用机制。然后将这种工具化合物概念应用于分析与阿尔茨海默病相关的14-3-3和高磷酸化 Tau(hpTau)的全长复合物。这种方法确定了14-3-3与hpTau之间一种隐蔽的结合相互作用——其磷酸化的Ser356,这在大多数14-3-3/Tau文献中都被忽视了。通过突变研究和平衡模型,揭示了这种隐蔽的结合相互作用在细胞相关浓度下发挥着重要的生物分子作用。这一发现需要重新评估14-3-3/Tau相互作用的机制。本文报道的组氨酸捕获交联剂方法不仅推进了我们对14-3-3/Tau相互作用的理解,还展示了双共价工具化合物在研究涉及内在无序蛋白质(IDP)和内在无序结构域(IDD)的复杂相互作用中的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d249/11836947/9a4b5ed1d906/d4sc07419j-f1.jpg

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